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A spatiotemporal barrier formed by Follistatin is required for left–right patterning

How left–right (LR) asymmetry emerges in a patterning field along the anterior–posterior axis remains an unresolved problem in developmental biology. Left-biased Nodal emanating from the LR organizer propagates from posterior to anterior (PA) and establishes the LR pattern of the whole embryo. Howev...

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Detalles Bibliográficos
Autores principales: Fu, Xin-Xin, Zhuo, Ding-Hao, Zhang, Ying-Jie, Li, Yun-Fei, Liu, Xiang, Xing, Yan-Yi, Huang, Ying, Wang, Yi-Fan, Cheng, Tao, Wang, Dan, Chen, Si-Han, Chen, Yi-Jian, Jiang, Guan-Nan, Lu, Fu-I, Feng, Yu, Huang, Xiao, Ma, Jun, Liu, Wei, Bai, Ge, Xu, Peng-Fei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10268237/
https://www.ncbi.nlm.nih.gov/pubmed/37276408
http://dx.doi.org/10.1073/pnas.2219649120
Descripción
Sumario:How left–right (LR) asymmetry emerges in a patterning field along the anterior–posterior axis remains an unresolved problem in developmental biology. Left-biased Nodal emanating from the LR organizer propagates from posterior to anterior (PA) and establishes the LR pattern of the whole embryo. However, little is known about the regulatory mechanism of the PA spread of Nodal and its asymmetric activation in the forebrain. Here, we identify bilaterally expressed Follistatin (Fst) as a regulator blocking the propagation of the zebrafish Nodal ortholog Southpaw (Spaw) in the right lateral plate mesoderm (LPM), and restricting Spaw transmission in the left LPM to facilitate the establishment of a robust LR asymmetric Nodal patterning. In addition, Fst inhibits the Activin–Nodal signaling pathway in the forebrain thus preventing Nodal activation prior to the arrival, at a later time, of Spaw emanating from the left LPM. This contributes to the orderly propagation of asymmetric Nodal activation along the PA axis. The LR regulation function of Fst is further confirmed in chick and frog embryos. Overall, our results suggest that a robust LR patterning emerges by counteracting a Fst barrier formed along the PA axis.